[HTML][HTML] Durability and mass loss effect of heat-treated stainless-steel cathode for methane production from organic and inorganic carbon in a bioelectrochemical …

V Ahmadi, C Dinamarca, N Aryal - Journal of Hazardous Materials …, 2025 - Elsevier
A key factor in biogas production via bioelectrochemical systems (BES) is the stability of
electrodes in long-term operation, especially under limited applied energy and varying …

Assessment of the microbial electrochemical sensor (SENTRY™) as a potential wastewater quality monitoring tool for common pollutants found in Malaysia

MFH Me, WL Ang, AR Othman, AW Mohammad… - Environmental …, 2024 - Springer
Bioelectrochemical sensors for environment monitoring have the potential to provide facility
operators with real-time data, allowing for better and more timely decision-making regarding …

Enrichment of electrogenic microbes on surface-modified stainless steel 304L for rapid start-up of microbial electrochemical sensors

RYZ Yeo, WL Ang, E Mahmoudi, M Ismail… - Materials Today …, 2024 - Elsevier
Abstract Stainless steel (SS) 304L, a cost-effective and mechanically robust material, is
widely used in microbial electrochemical systems as an anode due to its versatility …

Timing of magnetite introduction drives distinct community succession in bioelectrochemical systems: From colonization to acclimation

Z Kong, H Wang, S Man, Q Yan - Chemical Engineering Journal, 2025 - Elsevier
Introducing functional materials into bioreactors influences community succession and
shapes functional capabilities. However, how the timing of material introduction affects …

Multi‐Array Tubular Microbial Fuel Cell‐Based Biosensor with Membrane Electrode Assembled Air‐Cathodes

RYZ Yeo, WL Ang, MHA Bakar, M Ismail… - Fuel Cells, 2024 - Wiley Online Library
Using microbial fuel cells (MFCs) as biosensors ensures a sustainable method for water
quality detection. However, the research on MFC‐based biosensors with a tubular setup is …